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铝合金表面激光控制清洗的研究进展与挑战

Research Progress and Challenges in Laser-Controlled Cleaning of Aluminum Alloy Surfaces.

作者信息

Deng Jian, Zhao Guanrong, Lei Jieheng, Zhong Lin, Lei Zeyong

机构信息

School of Nuclear Science and Technology, University of South China, Hengyang 421001, China.

School of Mechanical Engineering, University of South China, Hengyang 421001, China.

出版信息

Materials (Basel). 2022 Aug 9;15(16):5469. doi: 10.3390/ma15165469.

Abstract

Aluminum alloys have been widely utilized in automobiles, aircraft, building structures, and high-speed railways industries due to their excellent structural and mechanical properties. Surface oxide film removal prior to aluminum alloy welding and old paint removal prior to repainting aluminum alloy surfaces are critical factors in ensuring the welding quality and service life of aluminum alloy products. Because of its unique advantages, such as environmental protection and precision control, laser-controlled cleaning has great application potential as a surface cleaning technology in removing oxide films and paint layers on aluminum alloy surfaces. In this paper, the mechanism of laser cleaning of oxide films and paint layers on aluminum alloy is discussed. Furthermore, the impact of various processing parameters such as laser beam power, energy density, scanning speed, and so on is analyzed in detail. After laser cleaning, the corrosion resistance, welding performance, adhesive performance, and other properties of the aluminum alloy are optimized. This paper also discusses several real-time detection technologies for laser cleaning. A summary and the development trend are provided at the end of the paper.

摘要

铝合金因其优异的结构和机械性能,已在汽车、航空、建筑结构和高速铁路等行业中得到广泛应用。铝合金焊接前的表面氧化膜去除以及铝合金表面重新喷漆前的旧漆去除,是确保铝合金产品焊接质量和使用寿命的关键因素。激光控制清洗作为一种表面清洗技术,因其具有环保、精确控制等独特优势,在去除铝合金表面氧化膜和漆层方面具有巨大的应用潜力。本文讨论了铝合金表面氧化膜和漆层的激光清洗机理。此外,还详细分析了激光束功率、能量密度、扫描速度等各种加工参数的影响。经过激光清洗后,铝合金的耐腐蚀性、焊接性能、粘接性能等性能得到优化。本文还讨论了几种激光清洗的实时检测技术。文章结尾给出了总结和发展趋势。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0bc9/9410451/724b749b4c92/materials-15-05469-g001.jpg

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